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Dual-mode antenna array for microwave heating and noninvasive thermometry of superficial tissue disease

机译:用于表层组织疾病的微波加热和无创测温的双模天线阵列

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Abstract: Hyperthermia therapy of superficial skin disease has proven clinically useful, but current heating equipment is clumsy and technically inadequate for many patients. The present effort describes a dual purpose multielement conformal array microwave applicator that is fabricated from flexible printed circuit board (PCB) material to facilitate heating of large surface areas overlying contoured anatomy. Preliminary studies document the feasibility of combining concentric spiral microstrip antennas within multilayer PCB material in order to achieve tissue heating simultaneously with non-invasive thermometry by radiometric sensing of blackbody radiation from the target tissue under the applicator. Results demonstrate that superficial tissue regions may be heated uniformly above 50% of SAR$-max$/ out to the periphery of 915 MHz conformal array applicators made from arrays of Dual Concentric Conductor apertures. Finally the data clearly demonstrate that separate complimentary antenna structures may be combined together in thin and lightweight conformal arrays to provide heating simultaneously with microwave radiometry based temperature monitoring of superficial tissue.!18
机译:摘要:浅表性皮肤病的高温疗法已被证明在临床上有用,但是当前的加热设备笨拙且技术上不足以使许多患者受益。本发明描述了一种由柔性印刷电路板(PCB)材料制成的两用多元素共形阵列微波施加器,以促进对覆盖轮廓的解剖结构的大表面积进行加热。初步研究证明了在多层PCB材料中结合同心螺旋微带天线的可行性,以便通过辐射感测来自施加器下方目标组织的黑体辐射,同时实现组织加热和无创测温。结果表明,浅表组织区域可以均匀加热到SAR $ -max $ /的50%以上,并加热到由双同心导体孔阵列制成的915 MHz保形阵列施加器的外围。最后,数据清楚地表明,可以在薄而轻的保形阵列中将单独的互补天线结构组合在一起,以与基于微波辐射测量的浅表组织温度监测同时提供热量!18

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